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泛素化组学:一种用于分析骨骼肌中蛋白质泛素化的新兴方法。

Ubiquitylomics: An Emerging Approach for Profiling Protein Ubiquitylation in Skeletal Muscle.

作者信息

Lord Samuel O, Johnston Harvey E, Samant Rahul S, Lai Yu-Chiang

机构信息

School of Sport, Exercise and Rehabilitation Sciences, University of Birmingham, Birmingham, UK.

Signalling Programme, The Babraham Institute, Cambridge, UK.

出版信息

J Cachexia Sarcopenia Muscle. 2024 Dec;15(6):2281-2294. doi: 10.1002/jcsm.13601. Epub 2024 Sep 16.

Abstract

Skeletal muscle is a highly adaptable tissue, finely tuned by various physiological and pathological factors. Whilst the pivotal role of skeletal muscle in overall health is widely acknowledged, unravelling the underlying molecular mechanisms poses ongoing challenges. Protein ubiquitylation, a crucial post-translational modification, is involved in regulating most biological processes. This widespread impact is achieved through a diverse set of enzymes capable of generating structurally and functionally distinct ubiquitin modifications on proteins. The complexity of protein ubiquitylation has presented significant challenges in not only identifying ubiquitylated proteins but also characterising their functional significance. Mass spectrometry enables in-depth analysis of proteins and their post-translational modification status, offering a powerful tool for studying protein ubiquitylation and its biological diversity: an approach termed ubiquitylomics. Ubiquitylomics has been employed to tackle different perspectives of ubiquitylation, including but not limited to global quantification of substrates and ubiquitin linkages, ubiquitin site recognition and crosstalk with other post-translational modifications. As the field of mass spectrometry continues to evolve, the usage of ubiquitylomics has unravelled novel insights into the regulatory mechanisms of protein ubiquitylation governing biology. However, ubiquitylomics research has predominantly been conducted in cellular models, limiting our understanding of ubiquitin signalling events driving skeletal muscle biology. By integrating the intricate landscape of protein ubiquitylation with dynamic shifts in muscle physiology, ubiquitylomics promises to not only deepen our understanding of skeletal muscle biology but also lay the foundation for developing transformative muscle-related therapeutics. This review aims to articulate how ubiquitylomics can be utilised by researchers to address different aspects of ubiquitylation signalling in skeletal muscle. We explore methods used in ubiquitylomics experiments, highlight relevant literature employing ubiquitylomics in the context of skeletal muscle and outline considerations for experimental design.

摘要

骨骼肌是一种高度适应性的组织,受到各种生理和病理因素的精细调节。虽然骨骼肌在整体健康中的关键作用已得到广泛认可,但揭示其潜在的分子机制仍面临持续挑战。蛋白质泛素化是一种关键的翻译后修饰,参与调节大多数生物过程。这种广泛的影响是通过一组多样化的酶实现的,这些酶能够在蛋白质上产生结构和功能不同的泛素修饰。蛋白质泛素化的复杂性不仅在鉴定泛素化蛋白质方面,而且在表征其功能意义方面都带来了重大挑战。质谱能够深入分析蛋白质及其翻译后修饰状态,为研究蛋白质泛素化及其生物多样性提供了强大工具:一种称为泛素组学的方法。泛素组学已被用于解决泛素化的不同方面,包括但不限于底物和泛素连接的全局定量、泛素位点识别以及与其他翻译后修饰的相互作用。随着质谱领域的不断发展,泛素组学的应用揭示了关于蛋白质泛素化调控生物学机制的新见解。然而,泛素组学研究主要在细胞模型中进行,限制了我们对驱动骨骼肌生物学的泛素信号事件的理解。通过将蛋白质泛素化的复杂图景与肌肉生理学的动态变化相结合,泛素组学不仅有望加深我们对骨骼肌生物学的理解,还为开发变革性的肌肉相关治疗方法奠定基础。本综述旨在阐明研究人员如何利用泛素组学来解决骨骼肌中泛素化信号的不同方面。我们探讨了泛素组学实验中使用的方法,强调了在骨骼肌背景下采用泛素组学的相关文献,并概述了实验设计的注意事项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/357c/11634490/7a9f2fef1352/JCSM-15-2281-g005.jpg

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